离子键合
发光
材料科学
卤化物
溴化物
铜
混合材料
荧光粉
利乐
无机化学
离子
纳米技术
光电子学
有机化学
化学
药物化学
冶金
作者
Shuqin Chen,Jianmei Gao,Junyu Chang,Yanqi Li,Changxin Huangfu,Hu Meng,Yu Wang,Guang‐Jie Xia,Liang Feng
标识
DOI:10.1021/acsami.9b02418
摘要
While a number of highly luminescent copper(I) halide based hybrid materials built on coordinate bonds (Cu-L; L = N, P, S-based ligands) have been obtained, the poor structural stability largely limited their commercialization. In contrast, according to the previous studies, the ionic structures (L-free) are more stable than those built on Cu-L coordinate bonds. However, the extremely weak emission hinders their optical applications. Herein, we report a tetra-alkylammonium-cation-induced strategy for the synthesis of stable and highly luminescent ionic CuBr-based hybrid materials. It is interesting to find that the tetra-alkylammonium cations with different chains could induce diverse CuBr-based anions. Moreover, most of these CuBr-based hybrids are highly luminescent, which makes them promising candidates as an alternative to phosphors and with potential applications in sensing.
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